Role of Silymarin in Cancer Treatment: Facts, Hypotheses, and Questions.

IF 3.3 Q1 INTEGRATIVE & COMPLEMENTARY MEDICINE Journal of Evidence-based Integrative Medicine Pub Date : 2022-01-01 DOI:10.1177/2515690X211068826
Tomas Koltai, Larry Fliegel
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引用次数: 22

Abstract

The flavonoid silymarin extracted from the seeds of Sylibum marianum is a mixture of 6 flavolignan isomers. The 3 more important isomers are silybin (or silibinin), silydianin, and silychristin. Silybin is functionally the most active of these compounds. This group of flavonoids has been extensively studied and they have been used as hepato-protective substances for the mushroom Amanita phalloides intoxication and mainly chronic liver diseases such as alcoholic cirrhosis and nonalcoholic fatty liver. Hepatitis C progression is not, or slightly, modified by silymarin. Recently, it has also been proposed for SARS COVID-19 infection therapy. The biochemical and molecular mechanisms of action of these substances in cancer are subjects of ongoing research. Paradoxically, many of its identified actions such as antioxidant, promoter of ribosomal synthesis, and mitochondrial membrane stabilization, may seem protumoral at first sight, however, silymarin compounds have clear anticancer effects. Some of them are: decreasing migration through multiple targeting, decreasing hypoxia inducible factor-1α expression, inducing apoptosis in some malignant cells, and inhibiting promitotic signaling among others. Interestingly, the antitumoral activity of silymarin compounds is limited to malignant cells while the nonmalignant cells seem not to be affected. Furthermore, there is a long history of silymarin use in human diseases without toxicity after prolonged administration. The ample distribution and easy accessibility to milk thistle-the source of silymarin compounds, its over the counter availability, the fact that it is a weed, some controversial issues regarding bioavailability, and being a nutraceutical rather than a drug, has somehow led medical professionals to view its anticancer effects with skepticism. This is a fundamental reason why it never achieved bedside status in cancer treatment. However, in spite of all the antitumoral effects, silymarin actually has dual effects and in some cases such as pancreatic cancer it can promote stemness. This review deals with recent investigations to elucidate the molecular actions of this flavonoid in cancer, and to consider the possibility of repurposing it. Particular attention is dedicated to silymarin's dual role in cancer and to some controversies of its real effectiveness.

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水飞蓟素在癌症治疗中的作用:事实、假设和问题。
从马利筋种子中提取的类黄酮水飞蓟素是 6 种黄酮异构体的混合物。其中较重要的三种异构体是水飞蓟宾(或水飞蓟素)、水飞蓟二甙和水飞蓟二甙。水飞蓟宾是这些化合物中功能最活跃的一种。对这组黄酮类化合物进行了广泛的研究,它们已被用作保护肝脏的物质,用于治疗鹅膏蕈中毒,主要是慢性肝病,如酒精性肝硬化和非酒精性脂肪肝。水飞蓟素不会或仅会轻微改变丙型肝炎的进展。最近,也有人提出将水飞蓟素用于治疗 SARS COVID-19 感染。这些物质对癌症的生化和分子作用机制是正在研究的课题。然而,水飞蓟素化合物具有明显的抗癌作用。水飞蓟素化合物具有明显的抗癌作用,其中包括:通过多靶点减少迁移、减少缺氧诱导因子-1α的表达、诱导某些恶性细胞凋亡、抑制促癌信号传导等。有趣的是,水飞蓟素化合物的抗肿瘤活性仅限于恶性细胞,而非恶性细胞似乎不受影响。此外,水飞蓟素用于人类疾病的历史悠久,长期服用也不会产生毒性。奶蓟草是水飞蓟素化合物的来源,分布广泛,易于获取,可在非处方药店购买,它是一种杂草,在生物利用率方面存在一些争议,而且它是一种营养保健品而不是药物,这些因素在某种程度上导致医学专家对它的抗癌作用持怀疑态度。这也是为什么它在癌症治疗中从未获得床边地位的根本原因。然而,尽管水飞蓟素具有抗肿瘤作用,但它实际上具有双重功效,在某些情况下,如胰腺癌,它还能促进干细胞的生长。这篇综述介绍了最近为阐明这种类黄酮在癌症中的分子作用而进行的研究,并探讨了重新利用它的可能性。其中特别关注了水飞蓟素在癌症中的双重作用,以及关于其实际功效的一些争议。
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来源期刊
Journal of Evidence-based Integrative Medicine
Journal of Evidence-based Integrative Medicine INTEGRATIVE & COMPLEMENTARY MEDICINE-
CiteScore
5.90
自引率
0.00%
发文量
43
审稿时长
15 weeks
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